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DataTítuloAutor(es)TipoAcesso
2008Cartilage tissue engineering using a flow perfusion bioreactorSilva, M. L Alves da; Martins, Albino; Costa, P. F., et al.Resumo em ata de conferência Acesso aberto
Set-2010Cartilage tissue engineering using electrospun PCL nanofiber meshes and MSCsSilva, M. L. Alves da; Martins, A.; Costa-Pinto, A. R., et al.ArtigoAcesso aberto
Mai-2019Chondrogenesis-inductive nanofibrous substrate using both biological fluids and mesenchymal stem cells from an autologous sourceCasanova, Marta Alexandra Rodrigues; Alves da Silva, M.; Costa-Pinto, A. R., et al.ArtigoAcesso restrito UMinho
Nov-2021Chondrogenic differentiation induced by extracellular vesicles bound to a nanofibrous substrateCasanova, Marta Alexandra Rodrigues; Osório, Hugo; Reis, R. L., et al.ArtigoAcesso aberto
2011Chondrogenic differentiation of human bone marrow mesenchymal stem cells in chitosan based scaffolds using a flow perfusion bioreactorAlves da Silva, Marta L.; Martins, Albino; Costa-Pinto, A. R., et al.ArtigoAcesso restrito UMinho
Set-2012Chondroitin sulfate immobilization at the surface of electrospun nanofiber meshes for cartilage regenerationPiai, Juliana Francis; Martins, Albino; Silva, Marta Alves da, et al.Resumo em ata de conferência Acesso aberto
Mai-2017Chondroitin sulfate immobilization at the surface of electrospun nanofiber meshes for cartilage tissue regeneration approachesPiai, Juliana Francis; Silva, Marta Alves; Martins, Albino, et al.ArtigoAcesso restrito UMinho
2008Co-culture of endothelial and smooth muscle cells for the development of blood vessel constructsSzymczyk, Wojciech; Araújo, J. V.; Martins, Albino, et al.Resumo em ata de conferência Acesso aberto
2015Conditioned medium as a strategy for human stem cells chondrogenic differentiationSilva, M. L. Alves da; Pinto, A. R.; Martins, A., et al.ArtigoAcesso restrito UMinho
Jan-2024COX-2 inhibitor delivery system aiming intestinal inflammatory disordersOliveira, A.; Rodrigues, L.C.; Soares da Costa, D., et al.ArtigoAcesso aberto
2008Degradable particulate composite reinforced with nanofibre meshes for biomedical applicationsPinho, E. D.; Martins, A.; Araújo, J .V., et al.Resumo em ata de conferência Acesso aberto
Jun-2008Degradable Particulate Composite reinforced with nanofibre meshes for Biomedical ApplicationsPinho, E. D.; Martins, A.; Araujo, J. V., et al.Resumo em ata de conferência Acesso restrito UMinho
2009Degradable particulate composite reinforced with nanofibres for biomedical applicationsPinho, Elisabete D.; Martins, A.; Araújo, J. V., et al.ArtigoAcesso aberto
Jun-2016Delivery systems made of natural-origin polymers for tissue engineering and regenerative medicine applicationsMartins, Albino; Ferreira, Helena; Reis, R. L., et al.Capítulo de livroAcesso aberto
2008Dependence of cell proliferation on the morphology of starch based scaffolds for tissue engineeringChung, S.; Martins, A.; Correlo, V. M., et al.Resumo em ata de conferência Acesso aberto
Abr-2023Development of bilayered porous silk scaffolds for thymus bioengineeringSilva, Catarina S.; Kundu, Banani; Gomes, Joana M., et al.ArtigoAcesso restrito UMinho
3-Mai-2010Development of electrospun nanofibrous-based scaffolds for bone regenerationMartins, AlbinoTese de doutoramentoAcesso aberto
2024Diaphragmatic hernia repair porcine model to compare the performance of biodegradable membranes against Gore‑Tex®Scuglia, Marianna; Frazão, Laura P.; Miranda, Alice Augusta Macedo, et al.ArtigoAcesso aberto
2003Distribution of p63, cytokeratins 5/6 and cytokeratin 14 in 51 normal and 400 neoplastic human tissue samples using TARP-4 multi-tumor tissue microarrayReis Filho, Jorge S.; Simpson, Pete T.; Martins, Albino, et al.ArtigoAcesso aberto
Nov-2016Dual release of a hydrophilic and a hydrophobic osteogenic factor from a single liposomeMonteiro, N.; Martins, A.; Pires, R. A., et al.ArtigoAcesso restrito UMinho